DC voltage : Low
DC current : High
DC voltage : High
DC current : Low
DC voltage : 260V
Rotation speed
DC current
0
0
IPM
DC current
P
DC
Voltage
N
Detection
resistor
U+
V+
W+
U
−
V
−
W
−
U
V
W
Compressor motor
Fig. 6-8
Fig. 6-9
(3) Start current control
R003,R004,R608,R613, detect the DC voltage at the power circuit. The microcomputer receives a
DC voltage and applies correction to the overload set value so the DC current will be low when the
DC voltage is high.
(Since the load level is indicated by the DC voltage multiplied by DC current, R247, R248, R249 are
provided to perform the same overload judgement even when the voltage varies.)
It is required to maintain the start current (DC current) constant to smooth the start of the DC motor
of the compressor.
RAC-E10H2 uses software to control the start current.
The start current varies when supply voltage varies. This control method copes with variations in
the voltages as follows.
(1) Turns on the power module’s U
+
and V- transistors so the current flows to the motor windings
as shown in Fig. 6-9.
(2) Varies the turn-ON time of the U
+
transistor according to the DC voltage level and the start
is controlled so the start current is approx. 10A .
Fig. 6-10
Fig. 6-11
HIC
Microcomputer
RESET OUT.
RESET
19
7
C204
0V
R252
1
0V
8
2
3
IC5(1/2)
+
5V
D208
R287
C215
R284
R286
C225
R285
C226
R292
R289
R288
0V 0V 0V 0V
12V
12V line
12V line
5V line
5V line
Reset volage
Reset volage
Time
Time
10.9V
9.9V
12
6
0
12
6
0
Power is ON Voltage (V)
Power is OF
F
Voltage (V)
- 60 -